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CBM 钻井技术参数优化方法和软件开发:以 LUAN 矿区为例。

CBM drilling technical parameter optimization methodology and software development: a case study of LUAN mining area.

机构信息

China University of Mining and Technology, School of Resources and Geosciences, 1 University Rd, Xuzhou, Jiangsu, 221116 China.

China University of Mining and Technology, International College, 1 University Rd, Xuzhou, Jiangsu, 221116 China.

出版信息

An Acad Bras Cienc. 2021 Mar 24;93(1):e20190346. doi: 10.1590/0001-3765202120190346. eCollection 2021.

Abstract

Based on the leakage of the coalbed methane (CBM) drilling engineering practice of Luan mining area in China, the author determines the safe drilling fluid density range for the stable borehole wall based on borehole wall collapse and fracture pressure. Such parameters as the drilling fluid hydraulic parameters (including pump pressure, pump power and displacement, nozzle diameter, bit pressure drop, bit hydraulic horsepower, circulation pressure drop, impact force and jet velocity) and drilling parameters (including weight-on-bit, drilling rotary speed, bit tooth wear) in each borehole section are optimized. Taking the lowest drilling cost as the controlling target, the drilling parameter optimization model is designed and solved by the genetic algorithm. Furthermore, a software named "CBM borehole wall stability parameter design and optimization" characterized by visualization and applicable for drilling formation condition, which can be used to design and optimize the borehole drilling technological parameters, is developed. This program includes such modules as drilling fluid density prediction, drilling technology design, database management, user management and help. The developed software is proven to solve the drilling leakage effectively in the No.67 borehole practice, which can help drilling engineers to optimize CBM drilling technological parameters safely and quickly.

摘要

基于中国潞安矿区煤层气(CBM)钻井工程实践中的泄漏情况,作者确定了基于井壁坍塌和破裂压力的稳定井壁的安全钻井液密度范围。优化了每个井段的钻井液水力参数(包括泵压、泵功率和排量、喷嘴直径、钻头压降、钻头水力马力、循环压降、冲击力和射流速度)和钻井参数(包括钻压、钻旋转速度、钻头齿磨损)。以最低的钻井成本为控制目标,通过遗传算法设计并求解钻井参数优化模型。此外,还开发了一种名为“CBM 井壁稳定性参数设计与优化”的软件,该软件具有可视化功能,适用于钻井地层条件,可以用于设计和优化井眼钻井工艺参数。该程序包括钻井液密度预测、钻井技术设计、数据库管理、用户管理和帮助等模块。所开发的软件已被证明可有效解决第 67 号井实践中的钻井泄漏问题,有助于钻井工程师安全、快速地优化 CBM 钻井工艺参数。

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